A 4.00L of hydrogen gas is filled into an iron chamber at pressure 1.01×105Pa and temperature 300K. The chamber is then fitted to the jet plane, which is moving at a speed of 400m/s. Find the percentage increase in total random kinetic energy of the gas after attaching the chamber to flying jet. The molar mass of the hydrogen 2.016×10−3 kg/mol.
A 4.00L of hydrogen gas is filled into an iron chamber at pressure 1.01×105Pa and temperature 300K. The chamber is then fitted to the jet plane, which is moving at a speed of 400m/s. Find the percentage increase in total random kinetic energy of the gas after attaching the chamber to flying jet. The molar mass of the hydrogen 2.016×10−3 kg/mol.
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A 4.00L of hydrogen gas is filled into an iron chamber at pressure 1.01×105Pa and temperature 300K. The chamber is then fitted to the jet plane, which is moving at a speed of 400m/s. Find the percentage increase in total random kinetic energy of the gas after attaching the chamber to flying jet. The molar mass of the hydrogen 2.016×10−3 kg/mol.
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